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Phenotypic and Genotypic Diversity Among Symbiotic and Non-symbiotic Bacteria Present in Chickpea Nodules in Morocco

机译:摩洛哥鹰嘴豆结节中共生和非共生细菌之间的表型和基因型多样性

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摘要

Environmental pollution problems and increased demand for green technologies in production are forcing farmers to introduce agricultural practices with a lower impact on the environment. Chickpea (Cicer arietinum) in arid and semi-arid environments is frequently affected by harsh environmental stresses such as heat, drought and salinity, which limit its growth and productivity and affect biological nitrogen fixation ability of rhizobia. Climate change had further aggravated these stresses. Inoculation with appropriate stress tolerant rhizobia is necessary for an environmentally friendly and sustainable agricultural production. In this study, endophytic bacteria isolated from chickpea nodules from different soil types and regions in Morocco, were evaluated for their phenotypic and genotypic diversity in order to select the most tolerant ones for further inoculation of this crop. Phenotypic characterization of 135 endophytic bacteria from chickpea nodules showed a wide variability for tolerance to heavy metals and antibiotics, variable response to extreme temperatures, salinity, pH and water stress. 56% of isolates were able to nodulate chickpea. Numerical analysis of rep-PCR results showed that nodulating strains fell into 22 genotypes. Sequencing of 16S rRNA gene of endophytic bacteria from chickpea nodules revealed that 55% of isolated bacteria belong to Mesorhizobium genus. Based on MLSA of core genes (recA, atpD, glnII and dnaK), tasted strains were distributed into six clades and were closely related to Mesorhizobium ciceri, Mesorhizobium opportunistum, Mesorhizobium qingshengii, and Mesorhizobium plurifarium. Most of nodulating strains were belonging to a group genetically distinct from reference Mesorhizobium species. Three isolates belong to genus Burkholderia of the class β- proteobacteria, and 55 other strains belong to the class γ- proteobacteria. Some of the stress tolerant isolates have great potential for further inoculation of chickpea in the arid and semiarid environments to enhance biological nitrogen fixation and productivity in the context of climate change adaptation and mitigation.
机译:环境污染问题和对生产中绿色技术的需求增加,迫使农民采用对环境影响较小的农业实践。在干旱和半干旱环境中的鹰嘴豆(Cicer arietinum)经常受到恶劣的环境压力的影响,例如高温,干旱和盐碱化,这限制了其生长和生产力,并影响了根瘤菌的生物固氮能力。气候变化进一步加剧了这些压力。接种具有适当压力耐受性的根瘤菌对于环境友好和可持续的农业生产而言是必要的。在这项研究中,评估了从摩洛哥不同土壤类型和地区的鹰嘴豆小结中分离出的内生细菌的表型和基因型多样性,以选择最能耐受的细菌进一步接种该作物。对鹰嘴豆结节中的135种内生细菌的表型鉴定表明,其对重金属和抗生素的耐受性差异很大,对极端温度,盐度,pH和水分胁迫的反应也不同。 56%的分离株能够结节菜鹰嘴豆。 rep-PCR结果的数值分析表明,结瘤菌株属于22个基因型。鹰嘴豆结节内生细菌的16S rRNA基因测序表明,分离出的细菌中有55%属于中生根瘤菌属。根据核心基因(recA,atpD,glnII和dnaK)的MLSA,将品味菌株分为六个进化枝,并与中型中生根瘤菌,机会中型中生根瘤菌,青生中型根瘤菌和多发性中生根瘤菌密切相关。大多数结瘤菌株属于遗传上不同于参考中生根瘤菌属的组。三个分离株属于β-蛋白杆菌属伯克霍尔德氏菌属,另外55个菌株属于γ-蛋白杆菌属。在干旱和半干旱环境中,某些耐应力分离株具有进一步接种鹰嘴豆的巨大潜力,可以在适应和缓解气候变化的情况下提高生物固氮能力和生产力。

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